Kotlyar B, Maiorov V, Savchenko E
Acta Neurobiol Exp (Wars). 1979;39(6):517-36.
Neuronal correlates of conditioned placing reaction of cats forepaw were studied. The conditioned reaction evoking by tactile stimulation of the paws ventral side had the same motor pattern, consisting mainly in successive flexion and extension of elbow joint, as the placing reaction evoked by paws dorsal side stimulation in naive animals. The activity of single neurons from the m. biceps representation area in pericruciate motor cortex and VL thalamic nucleus was recorded. As a result of learning the excitatory response of cortical neurons to paws ventral side stimulation in 20-50 ms post-stimulus interval was 2-2.5 times more than the response to the same stimulation in naive cats. This short-latency increase of response was not accompanied by modifications of sensory inflow to the motor cortex or movement related afferentation changes arriving from VL nucleus. There were no marked differences in excitability of cortical neurons of naive and trained animals as well. The results suggest a functional plasticity of the neuronal net in the motor cortex, consisting of a change in the efficiency of connections between neurons receiving sensory determined afferent excitation and the functional groups of neurons controlling the contraction of different muscles.
对猫前爪条件性放置反应的神经元相关性进行了研究。由爪腹侧触觉刺激诱发的条件反应与未经过训练的动物中由爪背侧刺激诱发的放置反应具有相同的运动模式,主要包括肘关节的连续屈伸。记录了十字周运动皮层中二头肌代表区和丘脑腹外侧核单个神经元的活动。学习的结果是,刺激后20 - 50毫秒内,皮层神经元对爪腹侧刺激的兴奋性反应比未经过训练的猫对相同刺激的反应高2 - 2.5倍。这种反应的短潜伏期增加并未伴随着运动皮层感觉输入的改变或来自腹外侧核的与运动相关的传入变化。未经过训练的动物和经过训练的动物的皮层神经元兴奋性也没有明显差异。结果表明,运动皮层中神经元网络具有功能可塑性,包括接受感觉决定的传入兴奋的神经元与控制不同肌肉收缩的神经元功能组之间连接效率的改变。